1. School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore 639798, Singapore.
Theranostics. 2012;2(7):681-94. doi: 10.7150/thno.3692. Epub 2012 Jul 27.
Quantum dots (QDs) are luminescent nanocrystals with rich surface chemistry and unique optical properties that make them useful as probes or carriers for traceable targeted delivery and therapy applications. QDs can be functionalized to target specific cells or tissues by conjugating them with targeting ligands. Recent advancement in making biocompatible QD formulations has made these nanocrystals suitable for in vivo applications. This review provides an overview of the preparation of QDs and their use as probes or carriers for traceable, targeted therapy of diseases in vitro and in vivo. More specifically, recent advances in the integration of QDs with drug formulations for therapy and their potential toxicity in vitro and in vivo are highlighted. The current findings and challenges for optimizing QD/drug formulations with respect to optimal size and stability, short-term and long-term toxicity, and in vivo applications are described. Lastly, we attempt to predict key trends in QD/drug formulation development over the next few years and highlight areas of therapy where their use may provide breakthrough results in the near future.
量子点 (QD) 是具有丰富表面化学性质和独特光学性质的发光纳米晶体,可作为示踪剂或载体用于可追踪的靶向递药和治疗应用。通过与靶向配体缀合,QD 可被功能化以靶向特定的细胞或组织。最近在制备生物相容性 QD 制剂方面的进展使得这些纳米晶体适合于体内应用。本综述提供了 QD 的制备及其作为探针或载体用于体外和体内可追踪、靶向治疗疾病的概述。更具体地说,强调了将 QD 与药物制剂整合用于治疗以及它们在体外和体内的潜在毒性的最新进展。描述了针对最佳尺寸和稳定性、短期和长期毒性以及体内应用优化 QD/药物制剂方面的当前发现和挑战。最后,我们试图预测未来几年 QD/药物制剂开发的关键趋势,并强调在不久的将来其用途可能会在治疗领域取得突破性成果的领域。